SJo

@sjo09.bsky.social

Short Canadian

🚨Happy to share a new preprint from Lerner Lab led by graduate student @nadelneurosci.bsky.social! 🚨 “Adolescent stress recruits a latent amygdala-dopamine circuit to drive punishment-resistant reward-seeking” This has been a wholly impressive effort by Jacob; summary below 👇 #neuroskyence🧪

bioRxiv Neuroscience@biorxiv-neursci.bsky.social · 2d ago

Adolescent stress recruits a latent amygdala-dopamine circuit to drive punishment-resistant reward-seeking https://www.biorxiv.org/content/10.64898/2026.07.29.741478v1

Excited for #TAMeG2026 on Tues, May 26, 2026! 30 talks & data blitzes, @aliprestonphd.bsky.social keynote, Mentorship & Leadership Panel feat Mr. Ike Okafor and @efriskouw.bsky.social! This event is sold out! Arrive early for swag (supplies limited) and good seating. www.TAMeG.ca

tameg.ca

Brian Levine@brianlevine.bsky.social · 5mo ago

Get ready for the #TAMeG2026 feat @aliprestonphd.bsky.social, mentorship & leadership panel: Mr. Ike Okafor, @efriskouw.bsky.social, spectacular trainee talks, lunch 🥪, and reception🥂! www.tameg.ca @barense.bsky.social @jennyrabin.bsky.social @baycrest.bsky.social @uoftpsychology.bsky.social

New paper from the lab. Using longitudinal ca imaging, activity-dependent tagging and optogenetics, we show that newly allocated fear engram neurons in amygdala undergo a brief period of coordinated “offline reverberation” immediately after learning. www.pnas.org/doi/10.1073/...

PNAS

Proceedings of the National Academy of Sciences (PNAS), a peer reviewed journal of the National Academy of Sciences (NAS) - an authoritative source of high-impact, original research that broadly spans...

pnas.org

Excited to share our latest in @currentbiology.bsky.social (they who publish the coolest papers!) Memories are encoded by sparse neuronal ensembles (engrams). But most evidence comes from "simple" associative learning tasks. What about more integrative memories like spatial navigation?

Registration for the @canacn.bsky.social 2026 Neural Circuits and Behaviour satellite meeting is now live! Looking forward to hosting this event with @franklandlab.bsky.social again, and we're looking to have 4 trainee talks as part of the satellite. Register at www.eventbrite.com/e/1984146883...

Neural Circuits and Behaviour CAN 2026 Satellite Meeting

The third-annual CAN satellite event, bringing together Canadian neuroscientists studying circuits and behaviour.

eventbrite.com

Excited to share our new paper: We uncover a locus coeruleus→amygdala circuit linking β-adrenergic signaling to transcription regulation in defined amygdala cells during memory reconsolidation—+ stress or elevated noradrenergic signaling at recall can strengthen memory. www.cell.com/neuron/abstr...

A neuromodulatory circuit-to-molecular pathway for reformatting aversive memories during recall

Tan et al. identify a neuromodulatory circuit-to-molecular pathway in rats that updates aversive memories when they are recalled. Noradrenaline from the locus coeruleus triggers synapse-to-nuclear tra...

cell.com

How do memories guide behaviour? Multiple memory representations, from detailed to gist-like, let us flexibly reconstruct or reproduce past experiences to behave adaptively across species. Now out in Physiological Reviews with Morris Moscovitch, Melanie Sekeres & @brianlevine.bsky.social!

Adaptive episodic memory: how multiple memory representations drive behavior in humans and nonhumans | Physiological Reviews | American Physiological Society

Episodic memory is a declarative long-term memory of a specific past experience. As such, it is multifaceted, encompassing both the objective and subjective components of that experience. These components can be flexibly represented at different levels of granularity, from precise, context-specific details to generalized, gistlike representations. In this review, we suggest that 1) multiple representations of an episodic memory at different levels of granularity are simultaneously encoded into a memory trace and 2) the relative weighting of these representations determines the extent to which a memory is reconstructed or reproduced at retrieval. We propose that this representational flexibility drives adaptive behavior by prioritizing reconstruction or reproduction depending on the age of the memory, its relationship to prior knowledge, current attentional goals or task demands, and individual differences. Drawing on research in humans and nonhuman animals, we show a close correspondence between psychological and neural representations of a memory across encoding, consolidation, and retrieval. Specifically, we discuss how hippocampal activity in humans and engram formation and activation in rodents support the reproduction of detailed memory representations, whereas schema formation across species, mediated by the medial prefrontal cortex, facilitates reconstruction and generalization to guide behavior. Finally, we consider how species- and individual-level differences shape episodic memory representations. By integrating findings across species, we illustrate how the correspondence between neural and psychological representations enables multiple memory representations to balance stability and flexibility, ultimately driving adaptive behavior.

journals.physiology.org

Astrocytes enable amygdala neural representations supporting memory ->Nature | More on "Astrocytes enable amygdala memory representations" at BigEarthData.ai

Astrocytes enable amygdala neural representations supporting memory

Mice were male C57BL/6J mice (000664) and male Vglut1-cre mice (023527) mice obtained from The Jackson Laboratory (Bar Harbor) and male Glt1-G-CaMP740 mice obtained from RIKEN BioResource Research Center (G7NG817, RBRC09650). Mice were at least 8 weeks old at the time of surgery, before which they were group-housed in a temperature (72 ± 5 °F) and humidity (45 ± 15%) controlled vivarium under a 12 h–12 h light–dark cycle (lights on 06:00). After surgery, the mice were single housed to prevent cage mates from damaging intracranial implants. Experimental procedures were approved by the NIAAA and National Institute of Natural Sciences Animal Care and Use Committees and followed the NIH guidelines outlined in ‘Using Animals in Intramural Research’ and the local Animal Care and Use Committees. General surgical and histological procedures Surgery To target injection of viral constructs, optic fibres and GRIN lenses, mice were placed in a stereotaxic alignment system (Kopf Instruments) under isoflurane anaesthesia. Unless stated otherwise, viral constructs (see the relevant sections for details) were unilaterally (one-photon imaging, fibre photometry) or bilaterally (behavioural experiments, single-unit recordings) infused into the BLA in a volume of 0.36 µl over 10 min using a pulled-glass capillary (Drummond Scientific, 2-000-001; tip diameter,...

nature.com